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Technical Perspective of Carbon Capture,Utilization,and Storage 被引量:18
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作者 Qingyang Lin Xiao Zhang +2 位作者 Tao Wang Chenghang Zheng Xiang Gao 《Engineering》 SCIE EI CAS 2022年第7期27-32,共6页
Carbon dioxide(CO_(2))is the primary greenhouse gas contributing to anthropogenic climate change which is associated with human activities.The majority of CO_(2) emissions are results of the burning of fossil fuels fo... Carbon dioxide(CO_(2))is the primary greenhouse gas contributing to anthropogenic climate change which is associated with human activities.The majority of CO_(2) emissions are results of the burning of fossil fuels for energy,as well as industrial processes such as steel and cement production.Carbon capture,utilization,and storage(CCUS)is a sustainable technology promising in terms of reducing CO_(2) emissions that would otherwise contribute to climate change.From this perspective,the discussion on carbon capture focuses on chemical absorption technology,primarily due to its commercialization potential.The CO_(2) absorptive capacity and absorption rate of various chemical solvents have been summarized.The carbon utilization focuses on electrochemical conversion routes converting CO_(2) into potentially valuable chemicals which have received particular attention in recent years.The Faradaic conversion efficiencies for various CO_(2) reduction products are used to describe efficiency improvements.For carbon storage,successful deployment relies on a better understanding of fluid mechanics,geomechanics,and reactive transport,which are discussed in details. 展开更多
关键词 ccus carbon capture carbon utilization carbon storage Chemical absorption Electrochemical conversion storage mechanism
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Navigating the hydrogen prospect:A comprehensive review of sustainable source-based production technologies,transport solutions,advanced storage mechanisms,and CCUS integration 被引量:1
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作者 Sehar Tasleem Chandra Sekhar Bongu +1 位作者 Mohan Raj Krishnan Edreese Housni Alsharaeh 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期166-215,I0005,共51页
The review is a comprehensive discussion of current research advances,commercial scale developments,challenges,and techno-eco nomics for the entire H_(2) value chain,including production,mainly focusing on sustainable... The review is a comprehensive discussion of current research advances,commercial scale developments,challenges,and techno-eco nomics for the entire H_(2) value chain,including production,mainly focusing on sustainable sources,storage,and transport.The challenges,advantages,and uses of H_(2) energy are included at length.Moreover,apart from the sustainable production approaches,the approaches and current developments for combating the carbon dioxide(CO_(2))emissions from existing H_(2) production facilities are highlighted in terms of ca rbon capture,utilization,and storage(CCUS).Concisely,the review discusses current material and recent technological adva ncements in developing pilot projects and large-scale establishments for viable and rapidly emerging sou rce-ba sed H_(2) productio n.Moreover,the review also aims to provide an in-depthdiscussion and explore current developments based on the advantages of H_(2) energy in terms of its utilization,based on its high energy density,and its ability to be used as a feedstock and fuel.On the other hand,the challenges of H_(2) are also elabo rated.Next,the role of CCUS in a carbon-neutral economy and value chain for minimization of emissions from existing facilities is thoroughly deliberated,and the recent commercial-scale implementation of CCUS technologies is highlighted.Extending the utilization and recycling of captured CO_(2) emissions along with H_(2) to produce e-fuels in terms of current advances is detailed in this review.Fu rthermore,the most applicable,efficient,a nd develo ping approaches are discussed for physical and chemical H_(2) storage,considering recent la rge-scale implementations of liquid carriers and liquid organic hydrogen carriers as storage options.Lastly,the review elaborates on recent insights into advances in H_(2) transport infrastructure,including compressed and liquid H_(2) delivery via roads,ships,pipelines,and flight cargo.The review gives precise insights into the recent scenario through an elaborated conclusion of each discussion topic separately and a discussion of future perspectives.The current review will help researchers to fully understand the ongoing research advancements and challenges in the H_(2) value chain for formulating new solutions for sustainable H_(2) production,alo ng with focusing on suitable approaches for its storage and tra nsport to make the production and utilization of H_(2) applicable on a large scale. 展开更多
关键词 Source-based hydrogen Hydrogen utilization carbon capture E-fuels Hydrogen storage Transport infrastructure
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Early Opportunities for Onshore and Offshore CCUS Deployment in the Chinese Cement Industry
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作者 Jing-Li Fan Yifan Mao +1 位作者 Kai Li Xian Zhang 《Engineering》 2025年第3期348-362,共15页
The promotion of deep decarbonization in the cement industry is crucial for mitigating global climate change,a key component of which is carbon capture,utilization,and storage(CCUS)technology.Despite its importance,th... The promotion of deep decarbonization in the cement industry is crucial for mitigating global climate change,a key component of which is carbon capture,utilization,and storage(CCUS)technology.Despite its importance,there is a lack of empirical assessments of early opportunities for CCUS implementation in the cement sector.In this study,a comprehensive onshore and offshore source–sink matching optimization assessment framework for CCUS retrofitting in the cement industry,called the SSM-Cement framework,is proposed.The framework comprises four main modules:the cement plant suitability screening module,the storage site assessment module,the source–sink matching optimization model module,and the economic assessment module.By applying this framework to China,919 candidates are initially screened from 1132 existing cement plants.Further,603 CCUS-ready cement plants are identified,and are found to achieve a cumulative emission reduction of 18.5 Gt CO_(2) from 2030 to 2060 by meeting the CCUS feasibility conditions for constructing both onshore and offshore CO_(2) transportation routes.The levelized cost of cement(LCOC)is found to range from 30 to 96(mean 73)USD·(t cement)^(-1),while the levelized carbon avoidance cost(LCAC)ranges from^(-5) to 140(mean 88)USD·(t CO_(2))^(-1).The northeastern and northwestern regions of China are considered priority areas for CCUS implementation,with the LCAC concentrated in the range of 35 to 70 USD·(t CO_(2))^(-1).In addition to onshore storage of 15.8 Gt CO_(2) from 2030 to 2060,offshore storage would contribute 2.7 Gt of decarbonization for coastal cement plants,with comparable LCACs around 90 USD·(t CO_(2))^(-1). 展开更多
关键词 Cement industry carbon capture utilization and storage Levelized cost of cement Source-sink matching Offshore storage continental shale oil
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Criteria for Selecting Carbon Subsurface and Ocean Storage Site in Developing Countries: A Review
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作者 Gregory Mwenketishi Hadj Benkreira Nejat Rahmanian 《American Journal of Climate Change》 2024年第2期103-139,共37页
Important first phases in the process of implementing CO2 subsurface and ocean storage projects include selecting of best possible location(s) for CO2 storage, and site selection evaluation. Sites must fulfill a numbe... Important first phases in the process of implementing CO2 subsurface and ocean storage projects include selecting of best possible location(s) for CO2 storage, and site selection evaluation. Sites must fulfill a number of criteria that boil down to the following basics: they must be able to accept the desired volume of CO2 at the rate at which it is supplied from the CO2 source(s);they must as well be safe and reliable;and must comply with regulatory and other societal requirements. They also must have at least public acceptance and be based on sound financial analysis. Site geology;hydrogeological, pressure, and geothermal regimes;land features;location, climate, access, etc. can all be refined from these basic criteria. In addition to aiding in site selection, site characterization is essential for other purposes, such as foreseeing the fate and impacts of the injected CO2, and informing subsequent phases of site development, including design, permitting, operation, monitoring, and eventual abandonment. According to data from the IEA, in 2022, emissions from Africa and Asias emerging markets and developing economies, excluding Chinas, increased by 4.2%, which is equivalent to 206 million tonnes of CO2 and were higher than those from developed economies. Coal-fired power generation was responsible for more than half of the rise in emissions that were recorded in the region. The difficulty of achieving sustainable socio-economic progress in the developing countries is entwined with the work of reducing CO2 emissions, which is a demanding project for the economy. Organisations from developing countries, such as Bangladesh, Cameroon, India, and Nigeria, have formed partnerships with organisations in other countries for lessons learned and investment within the climate change arena. The basaltic rocks, coal seams, depleted oil and gas reservoirs, soils, deep saline aquifers, and sedimentary basins that developing countries (Bangladesh, Cameroon, India, and Nigeria etc.) possess all contribute to the individual countrys significant geological sequestration potential. There are limited or no carbon capture and storage or clean development mechanism projects running in these countries at this time. The site selection and characterization procedure are not complete without an estimate of the storage capacity of a storage location. Estimating storage capacity relies on volumetric estimates because a site must accept the planned volume of CO2 during the active injection period. As more and more applications make use of site characterization, so too does the body of written material on the topic. As the science of CO2 storage develops, regulatory requirements are implemented, field experience grows, and the economics of CO2 capture and storage improve, so too will site selection and characterisation change. 展开更多
关键词 AQUIFER ccus Site Selection carbon Dioxide capture and storage (CCS) CO2 Sequestration CCS Governmental Regulation CO2 Environment Impact Geological storage
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Carbon Dioxide Capture and Utilization for Gas Engine
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作者 Takashi Ogawa 《Energy and Power Engineering》 2013年第10期587-590,共4页
Sodium glycinate absorption and ethylene carbonate synthesis from a mixture gas of ethylene oxide and carbon dioxide are evaluated as carbon dioxide capture and utilization system for gas engine flue gas. The energy r... Sodium glycinate absorption and ethylene carbonate synthesis from a mixture gas of ethylene oxide and carbon dioxide are evaluated as carbon dioxide capture and utilization system for gas engine flue gas. The energy requirement for CO2 capture is estimated at 3.3 GJ/tonne CO2. The ethylene carbonate synthesis utilizes more than 90% of the captured CO2 and supply 2.5 GJ/tonne CO2 of thermal energy, which is 76% of the energy requirement for CO2 capture. The thermal integration of the sodium glycinate absorption and the ethylene carbonate synthesis reduces the energy requirement for CO2 capture from 3.3 GJ/tonne CO2 to 0.8 GJ/tonne CO2. The energy requirement for the CO2 capture is supplied using the steam saturated at 0.78 MPa from the gas engine without its electric power reduction. 展开更多
关键词 carbon Dioxide capture carbon Dioxide utilization carbonATE FORMATION Gas ENGINE
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CCUS地质封存井筒完整性研究进展及发展建议
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作者 郭少坤 李军 +1 位作者 连威 曹伟 《石油钻探技术》 北大核心 2025年第1期144-154,共11页
CO_(2)地质利用与封存的实施过程中气体泄漏与逃逸问题不仅影响工程效果,还会威胁人员和环境安全。井筒是CO_(2)泄漏的高风险途径,井筒完整性对保障CO_(2)长期稳定封存意义重大。针对CO_(2)地质封存中井筒密封失效可能引发的气体泄漏问... CO_(2)地质利用与封存的实施过程中气体泄漏与逃逸问题不仅影响工程效果,还会威胁人员和环境安全。井筒是CO_(2)泄漏的高风险途径,井筒完整性对保障CO_(2)长期稳定封存意义重大。针对CO_(2)地质封存中井筒密封失效可能引发的气体泄漏问题,在总结国内外相关研究成果的基础上,分析了CO_(2)注入和封存条件下井筒完整性失效机理与影响因素,讨论了不同封存地质体条件下可能出现的井筒完整性问题。基于国内CO_(2)地质封存技术现状,提出了井筒完整性技术对策及建议:优化设计水泥浆体系与施工参数,优选封存地层与管柱材料,加强CO_(2)泄漏监测技术研究,将预防措施与应对手段相结合,形成完整的技术体系。 展开更多
关键词 ccus 二氧化碳 井筒完整性 地质封存 泄漏
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CCUS注CO_(2)井管柱失效原因分析
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作者 牛步青 郑振兴 +4 位作者 李丹杰 靳俊娅 史交齐 刘西西 任枭雄 《石油管材与仪器》 2025年第1期70-76,共7页
某油田现场CCUS注CO_(2)井油管和套管在使用过程中发生断裂失效。通过宏观观察、磁粉检测、化学成分分析、力学性能测试、金相分析、腐蚀产物(EDS和XRD)分析、断口微观形貌分析以及环空液样品检测,对失效原因进行分析。结果表明,在含有... 某油田现场CCUS注CO_(2)井油管和套管在使用过程中发生断裂失效。通过宏观观察、磁粉检测、化学成分分析、力学性能测试、金相分析、腐蚀产物(EDS和XRD)分析、断口微观形貌分析以及环空液样品检测,对失效原因进行分析。结果表明,在含有硫化物腐蚀介质的油套环空环境中,在局部应力作用下,普通碳钢(N80-1)油、套管发生了硫化物应力腐蚀开裂失效。 展开更多
关键词 碳捕获、利用和封存 油套管失效 失效分析 油套环空 硫化物应力腐蚀开裂
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大规模CCUS在新型燃煤发电机组中的应用
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作者 冯琰磊 王亚飞 《电力勘测设计》 2025年第1期73-78,共6页
本文对燃煤电厂度电碳排放强度进行测算,提出新型燃煤发电机组二氧化碳捕集装置规模的建议,介绍醇胺吸收法在大规模二氧化碳捕集和封存利用(CCUS/CCS)中的应用及主要技术经济指标,针对实现燃煤电厂碳排放强度低于600 g CO_(2)/kWh要求的... 本文对燃煤电厂度电碳排放强度进行测算,提出新型燃煤发电机组二氧化碳捕集装置规模的建议,介绍醇胺吸收法在大规模二氧化碳捕集和封存利用(CCUS/CCS)中的应用及主要技术经济指标,针对实现燃煤电厂碳排放强度低于600 g CO_(2)/kWh要求的CCUS/CCS技术路线,详细分析了对原有系统的影响并提出了蒸汽和冷却水等系统优化方案,估算降低碳排放强度600 gCO_(2)/kWh条件下的CCUS/CCS运行费用及其对机组度电成本的影响。 展开更多
关键词 二氧化碳捕集 封存利用 新型燃煤发电 超超临界
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含CCUS和P2G的综合能源系统分布式鲁棒优化调度 被引量:4
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作者 骆钊 黎博文 +3 位作者 毕贵红 王华 张涛 沈鑫 《高电压技术》 EI CAS CSCD 北大核心 2024年第8期3486-3496,I0009-I0011,共14页
在双碳战略背景下,综合能源系统成为探索可再生能源低碳高效利用及多能耦合的主要途径。为兼顾综合能源系统在低碳优化时的稳定性和经济效益,提出了一种含碳捕集、利用与封存-电转气协同运行的综合能源系统分布式鲁棒低碳优化策略。首先... 在双碳战略背景下,综合能源系统成为探索可再生能源低碳高效利用及多能耦合的主要途径。为兼顾综合能源系统在低碳优化时的稳定性和经济效益,提出了一种含碳捕集、利用与封存-电转气协同运行的综合能源系统分布式鲁棒低碳优化策略。首先,对电转气过程精细化建模,研究氢能的多方面效益,建立CHP-CCUS-P2G耦合模型,并引入阶梯式碳交易机制,提出一种基于阶梯式碳交易机制的CHP-CCUS-P2G低碳经济调度方法;其次,考虑风光出力的不确定性,以调度系统中可用的历史数据为基础,构建数据驱动下min-max-min的两阶段鲁棒调度模型,采用1-范数和∞-范数约束场景概率分布模糊集;最后,基于列约束生成算法对模型反复迭代求解。算例仿真结果表明,上述模型提高了IES的风光消纳率和经济性,并降低了系统碳排放量。 展开更多
关键词 碳捕集、利用与封存 电转气 阶梯式碳交易 分布鲁棒 综合范数
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实现碳中和目标的CCUS产业发展展望 被引量:4
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作者 康佳宁 张云龙 +7 位作者 彭凇 崔鸿堃 田晓曦 纪一卓 戴敏 李小裕 谢鹏禛 刘兰翠 《北京理工大学学报(社会科学版)》 CSSCI 北大核心 2024年第2期68-75,共8页
中国碳中和目标的实现对CCUS技术需求巨大,亟须加快培育CCUS产业,赋能中国碳中和时代高质量发展。CCUS技术全链条产业体系建设将牵引制造业、采矿业、金融业等七大产业门类、25个大类和64个小类国民经济行业的技术、设备、材料、服务、... 中国碳中和目标的实现对CCUS技术需求巨大,亟须加快培育CCUS产业,赋能中国碳中和时代高质量发展。CCUS技术全链条产业体系建设将牵引制造业、采矿业、金融业等七大产业门类、25个大类和64个小类国民经济行业的技术、设备、材料、服务、市场及政策等创新需求,培植碳核查、碳金融、碳资产管理等新产业。围绕中国CCUS产业化现存的技术基础薄弱、市场被国外厂商主导、政策体系不完善等挑战,建议未来从以下几方面着手:搭建CCUS产业基础数据共享平台,加大产业关键技术研发投入,打造CCUS产业孵化基地,探索创新产业商业模式及市场机制,重视CCUS专业人才培养等。 展开更多
关键词 碳捕集封存与利用 产业化 技术需求 市场建设 新兴业态
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苏北油区CCUS-EOR项目全成本经济评价体系研究 被引量:1
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作者 徐强 《化工环保》 CAS CSCD 北大核心 2024年第2期265-270,共6页
将CO_(2)捕集、利用与封存(CCUS)技术与提高原油采收率(EOR)技术相结合,将捕集的CO_(2)注入地下驱油,在提高采收率的同时实现碳封存。CCUS-EOR项目的完整流程包括捕集压缩、运输、驱油、回注等多个环节。本文将CCUS-EOR全流程视为一个整... 将CO_(2)捕集、利用与封存(CCUS)技术与提高原油采收率(EOR)技术相结合,将捕集的CO_(2)注入地下驱油,在提高采收率的同时实现碳封存。CCUS-EOR项目的完整流程包括捕集压缩、运输、驱油、回注等多个环节。本文将CCUS-EOR全流程视为一个整体,通过剖析CO_(2)驱与常规水驱开发成本构成差异,建立适宜的CCUS-EOR项目全成本经济评价体系,确定捕集成本、运输成本、驱油成本的取值依据,推导出考虑碳减排收益的盈亏平衡模型,满足CCUS-EOR项目快速评价、辅助决策需求。 展开更多
关键词 碳捕集利用与封存(ccus) 提高原油采收率(EOR) 成本 碳减排量 盈亏平衡经济模型
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中国油气行业CCUS-EOR发展面临的挑战与对策 被引量:1
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作者 张书通 院振刚 +4 位作者 齐志斌 宋国光 林清安 吕杨 代旭 《国际石油经济》 2024年第12期53-60,共8页
二氧化碳捕集利用与封存(CCUS)是实现碳达峰、碳中和目标的兜底技术,发展前景广阔。在CCUS各环节中,二氧化碳捕集封存与提高采收率(CCUS-EOR)是二氧化碳利用和封存的重要手段。CO_(2)驱是低渗透油藏提高采收率的重要手段,管理创新是促进... 二氧化碳捕集利用与封存(CCUS)是实现碳达峰、碳中和目标的兜底技术,发展前景广阔。在CCUS各环节中,二氧化碳捕集封存与提高采收率(CCUS-EOR)是二氧化碳利用和封存的重要手段。CO_(2)驱是低渗透油藏提高采收率的重要手段,管理创新是促进CCUS-EOR项目效果实现的关键。通过前期攻关,油气行业CCUS-EOR全流程技术体系日臻成熟,但是当前油气企业发展CCUS-EOR仍面临很多挑战:二氧化碳来源不确定且价格高制约了项目效益的实现;不同盆地驱油机理仍需深入研究;碳捕集、管输、驱油等配套技术应用成本较高;地面工程适应性面临较大挑战。建议进一步完善二氧化碳驱油评层选区标准,降低投资风险;加快构建系统化、低成本CCUS-EOR技术体系;进一步做好顶层设计,构建内外部合作机制形成业务发展合力;积极争取低碳产业政策支持,确保CCUS-EOR业务良性发展;统筹做好重点盆地综合能源基地建设,打造国家级低碳、负碳示范区;加快形成CCUS一体化经济评价方法。 展开更多
关键词 油气企业 碳捕集利用与封存 ccus 提高采收率 ccus-EOR 二氧化碳驱油
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火力电厂大规模全流程CCUS技术研究进展与前瞻
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作者 桑树勋 滕卫卫 +5 位作者 刘世奇 樊玉新 陆诗建 李鑫钢 漆志文 徐钢 《天然气工业》 EI CAS CSCD 北大核心 2024年第12期187-198,共12页
燃气电厂在未来火力电厂的占比有望加大,但燃煤电厂目前仍然是中国最主要的工业碳排放源之一。为了助力“双碳”目标下的CCUS技术提升及去碳产业发展,聚焦了燃煤电厂大规模高效碳捕集、地质利用与地质封存以及全流程CCUS技术,评述了相... 燃气电厂在未来火力电厂的占比有望加大,但燃煤电厂目前仍然是中国最主要的工业碳排放源之一。为了助力“双碳”目标下的CCUS技术提升及去碳产业发展,聚焦了燃煤电厂大规模高效碳捕集、地质利用与地质封存以及全流程CCUS技术,评述了相关研究进展,预测了可能的技术突破方向。研究结果表明:①中国燃煤电厂碳捕集技术发展迅速,燃煤烟气低浓度CO_(2)吸收剂性能显著提升、大型捕集设备工作效率不断提高、电力系统与CO_(2)捕集系统耦合关系得到重视与强化,但技术瓶颈依然存在,低能耗、低损耗、低成本吸收剂的研发,高通量—低压降塔内件和超大型—紧凑型捕集分离设备的研制,以及大规模碳捕集系统耦合发电系统的优化控制是当务之急;②中国有大规模CO_(2)驱提高油气采收率的长期积累,CO_(2)地质封存理论研究及工程实践均取得显著进展,但大型盆地低渗透储层高效CO_(2)地质利用封存理论与技术尚不能满足规模化工程部署应用的要求,大型盆地多类型封存地质体适配性CO_(2)地质利用封存模式与高效CO_(2)地质利用封存机理、一体化的安全高效CO_(2)地质利用封存技术体系亟待构建;③源汇匹配、技术适配、系统优化是形成燃煤电厂大规模CCUS全流程技术的三大关键机制,燃煤电厂大规模全流程CCUS一体化去碳技术模式、技术集成的科学基础和工艺方法、复杂工程多模块一体化设计与建设运维技术等亟待创新发展。 展开更多
关键词 燃煤电厂 大规模全流程ccus技术 碳捕集 地质利用封存 全流程机制
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计及P2G的综合能源系统CCUS容量规划 被引量:1
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作者 陈仕龙 李崇绪 《现代电子技术》 北大核心 2024年第6期109-118,共10页
考虑到碳捕集利用与封存(CCUS)是对电转气(P2G)过程中二氧化碳(CO_(2))来源的细化,文中提出对综合能源系统(IES)进行电-氢-氧-甲烷-二氧化碳和虚拟二氧化碳等P2G过程的定性定量建模,以及对风-光-电动汽车-负荷等随机源荷进行时空聚类以... 考虑到碳捕集利用与封存(CCUS)是对电转气(P2G)过程中二氧化碳(CO_(2))来源的细化,文中提出对综合能源系统(IES)进行电-氢-氧-甲烷-二氧化碳和虚拟二氧化碳等P2G过程的定性定量建模,以及对风-光-电动汽车-负荷等随机源荷进行时空聚类以深度挖掘IES氢源碳源潜力的CCUS设备容量规划模型。以阶梯正负碳交易、弃风弃光惩罚和年设备投资成本等的年综合成本最低为目标,以碳捕集、碳存储和甲烷化等CCUS设备功率容量限值为全局变量对电气平衡和能量耦合进行二次约束,经过混合整数线性化处理后利用Cplex求解。算例分析表明,源荷时空聚类可在典型日场景缩减时保留IES廉价碳源氢源特征,合理规划后的CCUS设备可兼具弃风消纳和碳减排功能,使P2G制取的天然气更具市场竞争力。 展开更多
关键词 碳捕集利用与封存 综合能源系统 P2G 场景聚类 容量规划 源荷聚类
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双碳愿景下CCUS提高油气采收率技术 被引量:7
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作者 胡书勇 郭学强 +1 位作者 张佳轶 陈世纪 《世界石油工业》 2024年第1期81-91,共11页
二氧化碳(CO_(2))捕集与封存技术(CCS)是实现“双碳”目标的一项重大技术,如何运用CCS技术实现碳减排,成为全球关注的热点问题。因地质体具有良好的封闭性和巨大的封存潜力,CO_(2)地质封存成为碳封存的首选方式。单纯的地质封存项目成... 二氧化碳(CO_(2))捕集与封存技术(CCS)是实现“双碳”目标的一项重大技术,如何运用CCS技术实现碳减排,成为全球关注的热点问题。因地质体具有良好的封闭性和巨大的封存潜力,CO_(2)地质封存成为碳封存的首选方式。单纯的地质封存项目成本高昂,不适宜开展大规模推广;油气藏注CO_(2)提高采收率技术在全球范围内已经较为成熟,其目的主要是提高油气采收率。将这两者相结合,大幅度提高油气采收率的同时,可实现CO_(2)长久安全封存,节约碳封存成本。在对CO_(2)地质封存与油气藏注CO_(2)提高采收率技术的作用机理与发展现状进行阐述的基础上,提出“双碳”愿景下中国油气工业应大力发展二氧化碳捕集、利用及封存(CCUS)提高油气采收率技术,实现CO_(2)绿色资源化利用,达到既实现CO_(2)的地质封存又提高油气采收率双赢的目的。指出目前的技术瓶颈及进一步发展的方向,特别是随着油气勘探开发领域向非常规、难采储量油气藏发展,中国大力发展CCUS提高油气采收率技术更具重要性和迫切性,并且具有广阔的应用前景,对于中国顺利实现“双碳”目标,保障国家能源安全及可持续高质量发展具有重要意义。 展开更多
关键词 二氧化碳地质封存 二氧化碳捕集、利用及封存 油藏注二氧化碳提高采收率 气藏注二氧化碳提高采收率 油气藏开发 二氧化碳绿色资源化利用
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碳捕集、利用和封存(CCUS)技术发展现状及应用展望 被引量:29
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作者 阳平坚 彭栓 +3 位作者 王静 王强 任妮 宋维宁 《中国环境科学》 EI CAS CSCD 北大核心 2024年第1期404-416,共13页
梳理了碳捕集、利用和封存(CCUS)技术各关键环节的发展概况,阐述了全球和我国现阶段CCUS技术应用进展和挑战.结果表明,在当前的经济技术水平下,CCUS项目难以实现成本效益的平衡,因此必须转变思路,将CO_(2)视为一种基础工业原料,加快CO_... 梳理了碳捕集、利用和封存(CCUS)技术各关键环节的发展概况,阐述了全球和我国现阶段CCUS技术应用进展和挑战.结果表明,在当前的经济技术水平下,CCUS项目难以实现成本效益的平衡,因此必须转变思路,将CO_(2)视为一种基础工业原料,加快CO_(2)资源化利用布局.基于此,提出CO_(2)转化利用金字塔模型,通过优化组合高附加值碳基材料、化工利用、生物合成等CO_(2)转化利用路径,形成兼具减排和商业价值的新型碳经济.最后,根据我国未来在能源领域的领先性和电网的灵活度的实际需要,提出了加快我国CCUS技术布局和应用的政策建议,以期助力CCUS技术产业化落地与可持续发展. 展开更多
关键词 碳中和 碳捕集、利用和封存 碳经济 CO_(2)利用路径
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CO_(2)storage with enhanced gas recovery(CSEGR):A review of experimental and numerical studies 被引量:11
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作者 Shu-Yang Liu Bo Ren +5 位作者 Hang-Yu Li Yong-Zhi Yang Zhi-Qiang Wang Bin Wang Jian-Chun Xu Ramesh Agarwal 《Petroleum Science》 SCIE CAS CSCD 2022年第2期594-607,共14页
CO_(2)emission mitigation is one of the most critical research frontiers.As a promising option of carbon capture,utilization and storage(CCUS),CO_(2)storage with enhanced gas recovery(CSEGR)can reduce CO_(2)emission b... CO_(2)emission mitigation is one of the most critical research frontiers.As a promising option of carbon capture,utilization and storage(CCUS),CO_(2)storage with enhanced gas recovery(CSEGR)can reduce CO_(2)emission by sequestrating it into gas reservoirs and simultaneously enhance natural gas production.Over the past decades,the displacement behaviour of CO_(2)—natural gas has been extensively studied and demonstrated to play a key role on both CO_(2)geologic storage and gas recovery performance.This work thoroughly and critically reviews the experimental and numerical simulation studies of CO_(2)displacing natural gas,along with both CSEGR research and demonstration projects at various scales.The physical property difference between CO_(2)and natural gas,especially density and viscosity,lays the foundation of CSEGR.Previous experiments on displacement behaviour and dispersion characteristics of CO_(2)/natural gas revealed the fundamental mixing characteristics in porous media,which is one key factor of gas recovery efficiency and warrants further study.Preliminary numerical simulations demonstrated that it is technically and economically feasible to apply CSEGR in depleted gas reservoirs.However,CO_(2)preferential flow pathways are easy to form(due to reservoir heterogeneity)and thus adversely compromise CSEGR performance.This preferential flow can be slowed down by connate or injected water.Additionally,the optimization of CO_(2)injection strategies is essential for improving gas recovery and CO_(2)storage,which needs further study.The successful K12—B pilot project provides insightful field-scale knowledge and experience,which paves a good foundation for commercial application.More experiments,simulations,research and demonstration projects are needed to facilitate the maturation of the CSEGR technology. 展开更多
关键词 carbon capture utilization and storage(ccus) Enhanced gas recovery CO_(2)geologic storage Miscible displacement DISPERSION
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International experience of carbon neutrality and prospects of key technologies:Lessons for China 被引量:9
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作者 Zheng-Meng Hou Ying Xiong +9 位作者 Jia-Shun Luo Yan-Li Fang Muhammad Haris Qian-Jun Chen Ye Yue Lin Wu Qi-Chen Wang Liang-Chao Huang Yi-Lin Guo Ya-Chen Xie 《Petroleum Science》 SCIE EI CAS CSCD 2023年第2期893-909,共17页
Carbon neutrality(or climate neutrality)has been a global consensus,and international experience exchange is essential.Given the differences in the degree of social development,resource endowment and technological lev... Carbon neutrality(or climate neutrality)has been a global consensus,and international experience exchange is essential.Given the differences in the degree of social development,resource endowment and technological level,each country should build a carbon-neutral plan based on its national conditions.Compared with other major developed countries(e.g.,Germany,the United States and Japan),China's carbon neutrality has much bigger challenges,including a heavy and time-pressured carbon reduction task and the current energy structure that is over-dependent on fossil fuels.Here we provide a comprehensive review of the status and prospects of the key technologies for low-carbon,near-zero carbon,and negative carbon emissions.Technological innovations associated with coal,oil-gas and hydrogen industries and their future potential in reducing carbon emissions are particularly explained and assessed.Based on integrated analysis of international experience from the world's major developed countries,in-depth knowledge of the current and future technologies,and China's energy and ecological resources potential,five lessons for the implementation of China's carbon neutrality are proposed:(1)transformation of energy production pattern from a coal-dominated pattern to a diversified renewable energy pattern;(2)renewable power-to-X and large-scale underground energy storage;(3)integration of green hydrogen production,storage,transport and utilization;(4)construction of clean energy systems based on smart sector coupling(ENSYSCO);(5)improvement of ecosystem carbon sinks both in nationwide forest land and potential desert in Northwest China.This paper provides an international perspective for a better understanding of the challenges and opportunities of carbon neutrality in China,and can serve as a theoretical foundation for medium-long term carbon neutral policy formulation. 展开更多
关键词 International experience carbon reduction technologies carbon neutrality Energy transition Underground energy storage carbon capture utilization and storage(ccus)
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中美CCUS技术发展与政策体系对比 被引量:2
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作者 史明威 高仕康 +3 位作者 吕昊东 马乔 张贤 李佳 《洁净煤技术》 CAS CSCD 北大核心 2024年第10期19-31,共13页
碳捕集、利用与封存(CCUS)技术是指能够将二氧化碳从能源利用、工业生产等排放源或生物质利用尾气、空气中等不同碳源捕集分离,并输送到适宜的场地加以利用或封存,最终实现二氧化碳减排的技术组合,是各国实现气候目标所不可或缺的重要... 碳捕集、利用与封存(CCUS)技术是指能够将二氧化碳从能源利用、工业生产等排放源或生物质利用尾气、空气中等不同碳源捕集分离,并输送到适宜的场地加以利用或封存,最终实现二氧化碳减排的技术组合,是各国实现气候目标所不可或缺的重要技术支撑。碳达峰碳中和目标提出后,中国已初步建立碳达峰碳中和相关政策体系,积极推进各行业深度技术创新和系统性变革。CCUS技术既是可以实现化石能源的大规模低碳利用的重要技术选择,又是推进钢铁、水泥等难减排工业行业深度脱碳的可行技术方案,更是未来抵消剩余温室气体排放的托底技术手段。为实现中美两国气候目标,两国最终需要通过CCUS技术实现每年数十亿吨的二氧化碳减排量。美国是全球CCUS技术的先行者之一,在政策法规制定、基础设施建设、大规模工程运营方面具有相对优势。为支撑净零排放目标,美国通过一系列卓有成效的财税激励机制加快了CCUS项目大规模部署进展,相关经验值得借鉴。文章通过比较中美两国在CCUS技术领域的潜力需求、政策法规、研发示范等情况,为我国CCUS技术及配套政策环境发展提供参考,并提出中美在CCUS技术领域开展合作的潜在方向。 展开更多
关键词 碳捕集、利用与封存 碳中和 CO_(2)减排 直接空气捕集技术 生物质耦合碳捕集技术
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Investigation of the role of Ca(OH)2 in the catalytic Alkaline Thermal Treatment of cellulose to produce H2 with integrated carbon capture 被引量:1
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作者 Maxim R.Stonor Nicholas Ouassil +1 位作者 Jingguang G.Chen Ah-Hyung Alissa Park 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2017年第5期984-1000,共17页
The Alkaline Thermal Treatment(ATT)of biomass is one of the few biomass conversion processes that has a potential for BECCS(bio-energy with carbon capture and storage).Combining in-situ carbon capture withcreates a ca... The Alkaline Thermal Treatment(ATT)of biomass is one of the few biomass conversion processes that has a potential for BECCS(bio-energy with carbon capture and storage).Combining in-situ carbon capture withcreates a carbon-neutral process that has the potential to be carbon-negative.This study has shown that the conversion of cellulose tosuppressedcan be achieved through the reforming of gaseous intermediates in a fixed bed of 10%Ni/ZrO2.Reforming occurs at low temperatures≤773 K,which could allow for improved sustainability. 展开更多
关键词 Hydrogen Biomass Alkaline Thermal Treatment Calcium hydroxide Calcium carbonate carbon capture utilization storage Nickel Heterogeneous catalysis Catalytic reforming
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